Allosteric Inhibition of SHP2: Identification of a Potent, Selective, and Orally Efficacious Phosphatase Inhibitor

Jorge Fortanet(Novartis (United States)), Christine Hiu-Tung Chen(Novartis (United States)), Ying-Nan P. Chen(Novartis (United States)), Zhouliang Chen(Novartis (United States)), Zhan Deng(Novartis (United States)), Brant Firestone(Novartis (United States)), Peter Fekkes(Novartis (United States)), Michelle Fodor(Novartis (United States)), Pascal D. Fortin(Novartis (United States)), Cary Fridrich(Novartis (United States)), Denise C. Grünenfelder(Novartis (United States)), Samuel B. Ho(Novartis (United States)), Kang Zhao(Novartis (United States)), Rajesh Karki(Novartis (United States)), Mitsunori Kato(Novartis (United States)), Nick Keen(Novartis (United States)), Laura R. LaBonte(Novartis (United States)), Jay F. Larrow(Novartis (United States)), François Lenoir(Novartis (United States)), Gang Liu(Novartis (United States)), Shumei Liu(Novartis (United States)), Franco Lombardo(Novartis (United States)), Dyuti Majumdar(Novartis (United States)), Matthew J. Meyer(Novartis (United States)), Mark Palermo(Novartis (United States)), Lawrence Perez(Novartis (United States)), Minying Pu(Novartis (United States)), Timothy M. Ramsey(Novartis (United States)), William R. Sellers(Novartis (United States)), Michael D. Shultz(Novartis (United States)), Travis Stams(Novartis (United States)), Christopher Towler(Novartis (United States)), Ping Wang(Novartis (United States)), Sarah Williams(Novartis (United States)), Ji-Hu Zhang(Novartis (United States)), Matthew J. LaMarche(Novartis (United States))
Journal of Medicinal Chemistry
June 27, 2016
Cited by 289Open Access
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Abstract

SHP2 is a nonreceptor protein tyrosine phosphatase (PTP) encoded by the PTPN11 gene involved in cell growth and differentiation via the MAPK signaling pathway. SHP2 also purportedly plays an important role in the programmed cell death pathway (PD-1/PD-L1). Because it is an oncoprotein associated with multiple cancer-related diseases, as well as a potential immunomodulator, controlling SHP2 activity is of significant therapeutic interest. Recently in our laboratories, a small molecule inhibitor of SHP2 was identified as an allosteric modulator that stabilizes the autoinhibited conformation of SHP2. A high throughput screen was performed to identify progressable chemical matter, and X-ray crystallography revealed the location of binding in a previously undisclosed allosteric binding pocket. Structure-based drug design was employed to optimize for SHP2 inhibition, and several new protein-ligand interactions were characterized. These studies culminated in the discovery of 6-(4-amino-4-methylpiperidin-1-yl)-3-(2,3-dichlorophenyl)pyrazin-2-amine (SHP099, 1), a potent, selective, orally bioavailable, and efficacious SHP2 inhibitor.


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